首页> 外文期刊>The Tohoku Journal of Experimental Medicine >Comparison of wiring techniques for bone fracture fixation in total hip arthroplasty.
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Comparison of wiring techniques for bone fracture fixation in total hip arthroplasty.

机译:全髋关节置换术中骨折固定布线技术的比较。

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摘要

The objective of this study was to investigate the effect of cerclage wire position and determine the number of wires necessary to prevent crack opening and stem subsidence following a proximal femoral fracture in cementless total hip arthroplasty. A cementless femoral stem one size larger than the templated size was inserted into each femur to initiate a proximal crack. A cerclage wire was wrapped around the fracture in one of two orientations: 1) parallel to the osteotomy (PO) and 2) normal to the fracture line (NF). The femur was compressed to a load of 890 N, 1780 N and 2670 N while crack opening and stem subsidence were measured. A second cerclage wire was placed parallel to NF wire and inferior to the lesser trochanter and a third wire was placed 1 cm distal and parallel to the second wire. The loading was repeated again. The mechanical evaluation of stem subsidence were verified by various computer simulations even using four wires. We have found that placement of the cerclage wires normal to the fracture line prevents stem subsidence and crack opening better than placement of the wires parallel to the osteotomy. Three cerclage wires, placed normal to the fracture line at three locations: 1) adjacent to the superior of the lesser trochanter, 2) adjacent to the inferior of the lesser trochanter and 3) 10 mm distal to the bottom of the lesser trochanter were necessary to achieve stability under higher loads.
机译:这项研究的目的是调查环扎钢丝位置的影响,并确定在非骨水泥全髋关节置换术中防止股骨近端骨折后裂缝开裂和茎下陷所需的钢丝数量。将比模板大小大一号的非骨水泥性股骨柄插入每个股骨中,以开始近端裂痕。环扎线以两个方向之一缠绕在骨折周围:1)平行于截骨术(PO)和2)垂直于骨折线(NF)。股骨被压缩至890 N,1780 N和2670 N的载荷,同时测量了裂纹的开度和茎干的沉陷。将第二根环扎线与NF线平行放置,并放置在小转子下方,将第三根环扎线的远端与第二根线平行放置1厘米。再次重复加载。即使使用四根导线,也可以通过各种计算机模拟来验证杆下沉的力学评估。我们发现,垂直于骨折线放置环扎线比平行于截骨线放置更能防止茎杆下沉和裂缝开裂。将三个环扎线垂直于骨折线放置在三个位置:1)靠近小转子上方,2)靠近小转子下方,以及3)距离小转子底部10 mm在更高的负载下实现稳定性。

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